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Magneto-optical properties of Au upon the injection of hot spin-polarized electrons across Fe/Au(0 0 1) interfaces

  • A. Alekhin
  • , I. Razdolski
  • , M. Berritta
  • , D. Bürstel
  • , V. Temnov
  • , D. Diesing
  • , U. Bovensiepen
  • , G. Woltersdorf
  • , P. M. Oppeneer
  • , A. Melnikov
  • Le Mans Universite
  • Max-Planck-Gesellschaft
  • Uppsala University
  • University of Duisburg-Essen
  • Martin Luther University Halle-Wittenberg

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

We demonstrate a novel method for the excitation of sizable magneto-optical effects in Au by means of the laser-induced injection of hot spin-polarized electrons in Au/Fe/MgO(0 0 1) heterostructures. It is based on the energy- and spin-dependent electron transmittance of Fe/Au interface which acts as a spin filter for non-thermalized electrons optically excited in Fe. We show that after crossing the interface, majority electrons propagate through the Au layer with the velocity on the order of 1 nm fs -1 (close to the Fermi velocity) and the decay length on the order of 100 nm. Featuring ultrafast functionality and requiring no strong external magnetic fields, spin injection results in a distinct magneto-optical response of Au. We develop a formalism based on the phase of the transient complex MOKE response and demonstrate its robustness in a plethora of experimental and theoretical MOKE studies on Au, including our ab initio calculations. Our work introduces a flexible tool to manipulate magneto-optical properties of metals on the femtosecond timescale that holds high potential for active magneto-photonics, plasmonics, and spintronics.

langue originaleAnglais
Numéro d'article124002
journalJournal of Physics: Condensed Matter
Volume31
Numéro de publication12
Les DOIs
étatPublié - 31 janv. 2019
Modification externeOui

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